The generation, migration, and differentiation of neurons requires the functional integrity of the microtubule cytoskeleton. Mutations in the tubulin gene family are known to cause various neurological diseases including lissencephaly, ocular motor disorders, polymicrogyria and amyotrophic lateral sclerosis. We have previously reported that mutations in TUBB5 cause microcephaly that is accompanied by severe intellectual impairment and motor delay. Here we present the characterization of a Tubb5 mouse model that allows for the conditional expression of the pathogenic E401K mutation. Homozygous knockin animals exhibit a severe reduction in brain size and in body weight. These animals do not show any significant impairment in general activity,...
We report that eight heterozygous missense mutations in TUBB3, encoding the neuron-specific beta-tub...
The development of the mammalian brain is dependent on extensive neuronal migration. Mutations in mi...
Neuronal migration and axon growth and guidance require precise control of microtubule dynamics and ...
SummaryThe formation of the mammalian cortex requires the generation, migration, and differentiation...
The formation of the mammalian cortex requires the generation, migration, and differentiation of neu...
The formation of the mammalian cortex requires the generation, migration, and differentiation of neu...
Missense heterozygous variants in the gamma tubulin gene TUBG1 have been linked to malformations of ...
International audienceDe novo heterozygous missense variants in the γ-tubulin gene TUBG1 have been l...
© The Author 2014. Published by Oxford University Press. All rights reserved. For Permissions, pleas...
SummaryThe development of the mammalian brain is dependent on extensive neuronal migration. Mutation...
none49siWe report that eight heterozygous missense mutations in TUBB3, encoding the neuron-specific ...
SummaryWe report that eight heterozygous missense mutations in TUBB3, encoding the neuron-specific β...
Des mutations hétérozygotes faux-sens dans le gène de la tubuline gamma TUBG1, ont été identifiées d...
AbstractMutations in the microtubule cytoskeleton are linked to cognitive and locomotor defects duri...
We report that eight heterozygous missense mutations in TUBB3, encoding the neuron-specific beta-tub...
We report that eight heterozygous missense mutations in TUBB3, encoding the neuron-specific beta-tub...
The development of the mammalian brain is dependent on extensive neuronal migration. Mutations in mi...
Neuronal migration and axon growth and guidance require precise control of microtubule dynamics and ...
SummaryThe formation of the mammalian cortex requires the generation, migration, and differentiation...
The formation of the mammalian cortex requires the generation, migration, and differentiation of neu...
The formation of the mammalian cortex requires the generation, migration, and differentiation of neu...
Missense heterozygous variants in the gamma tubulin gene TUBG1 have been linked to malformations of ...
International audienceDe novo heterozygous missense variants in the γ-tubulin gene TUBG1 have been l...
© The Author 2014. Published by Oxford University Press. All rights reserved. For Permissions, pleas...
SummaryThe development of the mammalian brain is dependent on extensive neuronal migration. Mutation...
none49siWe report that eight heterozygous missense mutations in TUBB3, encoding the neuron-specific ...
SummaryWe report that eight heterozygous missense mutations in TUBB3, encoding the neuron-specific β...
Des mutations hétérozygotes faux-sens dans le gène de la tubuline gamma TUBG1, ont été identifiées d...
AbstractMutations in the microtubule cytoskeleton are linked to cognitive and locomotor defects duri...
We report that eight heterozygous missense mutations in TUBB3, encoding the neuron-specific beta-tub...
We report that eight heterozygous missense mutations in TUBB3, encoding the neuron-specific beta-tub...
The development of the mammalian brain is dependent on extensive neuronal migration. Mutations in mi...
Neuronal migration and axon growth and guidance require precise control of microtubule dynamics and ...